首页> 外文会议>National Association of Corrosion Engineers Conferences >LABORATORY EVALUATION OF GALVANIC CO2 CORROSION AND INHIBITION OF CARBON STEEL PIPING PARTIALLY CLAD WITH ALLOY 625
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LABORATORY EVALUATION OF GALVANIC CO2 CORROSION AND INHIBITION OF CARBON STEEL PIPING PARTIALLY CLAD WITH ALLOY 625

机译:电镀二氧化碳腐蚀的实验室评价及碳钢管道含有合金625的碳钢管道

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Some oil and gas production systems have critical components internally clad with corrosion resistant alloys for protecting against specific degradation mechanisms. Experimental and modeling studies have shown that uninhibited corrosion rates of carbon steel piping could nearly double in areas close to the CS-Alloy 625 interface. In this work,polarization,galvanic current and immersion tests were conducted to evaluate the effectiveness of inhibitors to mitigate galvanic corrosion and preferential weld corrosion of carbon steel coupled to Alloy 625 in CO2-saturated brine at 66 ?. Three inhibitors were evaluated for their ability to reduce galvanic corrosion at concentration of 150 ppm v/v. All of the inhibitors evaluated were shown to be efficient in mitigating uncoupled uniform corrosion,but only one was able to also reduce galvanic currents to negligible values while showing no evidence of preferential weld corrosion or pitting.
机译:一些石油和天然气生产系统具有耐腐蚀合金的关键部件,用于防止特定的降解机制。实验和建模研究表明,碳钢管道的不羁腐蚀速率在靠近CS-合金625界面的区域几乎是两倍的双倍。在这项工作中,进行极化,电流电流和浸渍试验以评估抑制剂的有效性,以减轻碳钢的电抗腐蚀和碳钢的优先焊接腐蚀,在66℃下耦合到CO 2饱和盐水中的合金625的碳钢。评估三种抑制剂的能力,以减少浓度为150ppm v / v的电抗腐蚀。所评估的所有抑制剂被证明是有效的减轻均匀均匀腐蚀,但只能在不可忽略的值中降低电流,同时显示没有优先焊接腐蚀或点蚀的证据。

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